Increased carbon monoxide production by hemeoxygenase-1 caused by device-mediated hemolysis: Thrombotic phantom menace?

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Abstract

Replacement of key components of the circulatory system with artificial devices has become the mainstay of therapy for conditions such as end-stage valvular disease or congestive heart failure. Unfortunately, device thrombosis and thromboembolic morbidity persist despite optimized anticoagulation. This work reviews the commonly known causes of device-associated thrombophilia, introduces recent literature concerning the effect of carbon monoxide on coagulation, and presents new patient data linking endogenously produced carbon monoxide with device-associated thrombosis. A new paradigm involving the interaction of red blood cell lysis-induced upregulation of hemoxygenase-1, increased endogenous carbon monoxide, hyperfibrinogenemia, and contact protein/microparticle-induced thrombin generation is presented. © 2013 Wiley Periodicals, Inc. and International Center for Artificial Organs and Transplantation.

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Nielsen, V. G., Pearson, E. C., & Smith, M. C. (2013). Increased carbon monoxide production by hemeoxygenase-1 caused by device-mediated hemolysis: Thrombotic phantom menace? Artificial Organs, 37(11), 1008–1014. https://doi.org/10.1111/aor.12122

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